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1.
以耐光抑制的水稻(Oryza sativa L.)粳亚种品种"武育粳"和对光抑制敏感的籼亚种品种"汕优63"的剑叶为材料,比较研究了高光胁迫对水稻两个亚种光合系统的影响.结果表明,高光胁迫影响激发能在两个光系统之间的分配,抑制激发能向PSⅡ传递.在籼稻中激发峰和发射峰以及相关比值在受到高光胁迫后下降的幅度均比在粳稻中显著.与粳稻相比,高光胁迫几乎使籼稻的PSⅡ捕光色素蛋白复合体的三聚体解体,使其PSⅡ捕光色素蛋白复合体的二聚体、PSⅡ内周天线色素蛋白复合体、PSⅠ捕光色素蛋白复合体以及PSⅠ反应中心叶绿素a蛋白复合体的含量明显降低.高光胁迫导致水稻两亚种的PSⅡ捕光色素蛋白复合物单体含量的增加.类囊体膜多肽分析表明,高光胁迫使属于PSⅡ捕光色素蛋白复合体的27、25 kD蛋白和PSⅠ捕光色素蛋白复合体的21 kD蛋白含量在水稻两亚种中都降低,其中以25 kD蛋白含量降幅最大.在籼稻中高光胁迫使属于PSⅡ内周天线色素蛋白复合体的43 kD和47kD蛋白以及外周23kD蛋白含量明显降低而在粳稻中则影响较小.  相似文献   

2.
采用田间试验研究了421个常规籼稻、63个常规粳稻和82个籼型杂交稻品种种子含氮量的基因型差异。结果表明,栽培稻种子含氮量变幅在0.85%~2.55%,平均为1.39%。种子平均含氮量最高的是籼型杂交稻,高达1.46%,显著高于常规粳稻(1.39%)和常规籼稻(1.37%)。不同类型的栽培稻种子含氮量呈正态分布,但频数分布最高的区间存在一定的差异。以50%品种的种子含氮量(累积百分数从25%~75%)为依据,常规籼稻、常规粳稻、籼型杂交稻分别集中在1.21%~1.52%、1.21%~1.51%、1.36%~1.53%。LSR测验表明,籼型杂交稻极差显著小于常规籼稻和常规粳稻,但常规粳稻与常规籼稻的差异未达显著水平,即籼型杂交稻种子含氮量比常规籼稻和常规粳稻的分布更加集中。不同类型栽培稻内的种子含氮量极差较大,可分为若干组,且各组间达极显著差异。  相似文献   

3.
粳稻 (OryzasativaL .ssp .japonica)和籼稻 (O .sativassp .indica)对光抑制的敏感程度存在差异 ,它们的叶绿体光反应中心Ⅱ核心蛋白D1的稳定性不同。以菌落原位杂交法克隆了粳稻“95 16”和籼稻“籼优 6 3”叶绿体D1蛋白的编码基因psbA。核苷酸序列同源比较显示 :两者在启动子区和 5′_UTR完全相同 ;编码区存在着个别碱基的差异 ,但均位于三联体密码的第三位 ,不影响氨基酸编码特性 ,在蛋白质氨基酸序列上没有差异 ;在 3′_UTR内存在寡聚U长度的差异。因此 ,粳稻和籼稻D1蛋白对光抑制作用敏感性的差异与其蛋白质的氨基酸序列结构无关 ,可能与调控psbA基因表达的上游因子或光保护机制的差异有关。  相似文献   

4.
粳稻(Oryza sativa L.ssp.japonica)和籼稻(O.sativa ssp.indica)对光抑制的敏感程度存在差异,它们的叶绿体光反应中心Ⅱ核心蛋白D1的稳定性不同。以菌落原位杂交法克隆了粳稻“9516”和籼稻“籼优63”叶绿体D1蛋白的编码基因psaA。核苷酸序列同源比较显示:两在启动子枢和5′-UTR完全相同。编码区存在着个别碱基的差异,但均位于三联体密码的第三位,不影响氨基酸编码特性,在蛋白质氨基酸序列上没有差异,在3′-UTR内存在寡聚U4长度的差异。因此,粳稻和籼稻D1蛋白对光抑制作用敏感性的差异与其蛋白质的氨基酸序列结构无关,可能与调控psaA基因表达的上游因子或光保护机制的差异有关。  相似文献   

5.
目的:对结核分枝杆菌38kD 蛋白编码基因进行克隆表达及纯化,建立基于重组38 kD 蛋白的酶联免疫吸附法(ELISA)检测 结核病人血清标本,评价重组38 kD蛋白用于结核病血清学诊断抗原的价值。并比较分析其在汉族和维吾尔族人群中的血清学 诊断的差异。方法:用PCR方法扩增38 kD 蛋白的编码基因, 构建重组质粒, 转化到大肠杆菌BL21 中,经IPTG诱导表达, 得到纯 化的38 kD 蛋白,建立以38 kD蛋白为包被抗原的ELISA,并检测临床确诊的结核病人血清标本。结果:ELISA 检测结核病患者 血清标本的维吾尔族阳性率为34%(52/153),汉族为52.4%(65/124),两者对比有统计学差异(X2=9.538,P<0.005)。在阴性对照 中的维吾尔族特异度为96.4%(159/165),汉族为98. 8%(130/133),结果无统计学意义(X2=0.111,P>0.5)。结论:重组38kD 蛋白 用于血清学诊断的敏感度在维吾尔族和汉族中有差异,而其诊断特异度无差别。  相似文献   

6.
重组人肝刺激物在原核细胞中的表达与纯化   总被引:3,自引:0,他引:3  
Du HJ  Sun HL  Chen L  An W 《生理学报》2002,54(1):23-27
利用基因重组技术 ,构建成人肝刺激因子 (hHSS)和谷胱甘肽转移酶 (GST)融合表达载体 ,转化大肠杆菌BL 2 1(DE3 ) ,以His·Tag亲和层析纯化表达产物 ,FactorXa切割分离hHSS单体 ,并检测其生物学活性。结果显示 ,在pET 4 2a表达体系中hHSS以可溶性蛋白和包涵体两种形式存在 ,GST hHSS表达量占菌体可溶性蛋白的3 0 % ;FactorXa切割GST与hHSS之间肽腱 ,得到 3 3和 15kD两条蛋白带 ,经Western杂交证实 3 3kD条带为GST ,而 15kD条带的分子量与hHSS基因序列推测蛋白结果相符。经His·Tag再次纯化可获得hHSS单体 ,初步证实重组hHSS具有促进肝癌细胞增殖活性  相似文献   

7.
王孝林  王二涛 《植物学报》2019,54(3):285-287
根际微生物影响植物的生长及环境适应性。不同种属、不同种群的植物影响其环境微生物群落;反之,根际微生物也影响宿主植物生长发育与生态适应性。植物与根际微生物的互作现象及其机制,是生命科学研究关注的热点,也是农业微生物利用的关键问题。近期,中国科学家在该领域取得了突破性进展。通过对不同籼稻(Oryza sativa subsp. indica)和粳稻(O. sativa subsp. japonica)品种的根际微生物组进行研究,发现籼稻根际比粳稻根际富集更多参与氮代谢的微生物群落,且该现象与硝酸盐转运蛋白基因NRT1.1B在籼粳之间的自然变异相关联。通过对籼稻接种籼稻根际特异富集的微生物群体可以提高前者对有机氮的利用,促进其生长。该研究揭示了籼稻和粳稻根际微生物分化的分子基础,展示了利用根际微生物提高水稻营养高效吸收的应用前景。  相似文献   

8.
湖北光敏核不育水稻(Hubei photoperiod-sensitive genic male-sterile rice, HPGMR)是在我国发现并开始应用研究的。人们在应用研究中发现的许多问题,如光敏不育特性转育到籼稻上多变成温敏不育等,很难达成共识。加强机理研究已成为光敏水稻研究深入发展的当务之急。除了对不同时期“农垦58”与58S的代谢做各种分析外,寻找特异蛋白与特异基因是光敏水稻机理研究中两个重要方面。在蛋白研究方面,目前已报道发现35kD、45kD、60kD、61kD等与光敏不育材料有关的特异蛋白。这些结果表明,在“农垦58”与58S之间是可以找到特异蛋白的,但还不能确定这些蛋白与光敏不育性状的关系。为了解决已发现的特异蛋白与光敏不育性状的相关性问题,我们采用多对照的方法,对已知在农垦58S中稳定表达而在“农垦58”中不出现的60kD蛋白做了进一步的研究。  相似文献   

9.
从籼稻(OryzasativaL.spp.indica)“窄叶青”中克隆到了1个重复序列(pOs139)。经分子杂交证明,pOs139为一稻属内AA基因组特异的串联重复序列。序列分析表明,pOs139以355bp为一重复单位。以pOs139为探针对29份中国普通野生稻和43份中国栽培稻的基因组DNA进行的分子杂交表明,籼、粳亚种之间具有明显的差异,籼稻杂交带数明显多于粳稻,普通野生稻与籼稻相似,具有较多的杂交带数。拷贝数测定结果表明,pOs139在普通野生稻和籼稻中丰度均较高,在粳稻中丰度较低。结合pOs139的Southern杂交结果和以前的RAPD结果,认为籼稻和粳稻共同起源于普通野生稻。  相似文献   

10.
以抗旱性较强的玉米品种‘鲁单50’幼苗为材料,采用等渗的离子胁迫(0.8%NaCl,-0.6 MPa)和非离子胁迫(20%PEG)进行渗透胁迫处理,从受胁迫的玉米幼苗根系中分离出63.5 kD热稳定蛋白。用水杨酸(SA)处理幼苗96 h,取材进行SDS-PAGE电泳,发现63.5 kD热稳定蛋白既可被渗透胁迫诱导,也可被SA诱导产生,且SA对非离子渗透胁迫和离子渗透胁迫下诱导的该蛋白的表达表现出不同的作用,SA对非离子渗透胁迫下该蛋白的表达有抑制作用,而对离子渗透胁迫下该蛋白的表达有促进作用。SA对非离子渗透胁迫或离子渗透胁迫 ABA处理下的该蛋白的表达都表现出促进作用。研究表明,63.5 kD热稳定蛋白受SA信号途径的调控,并且在不同条件下,SA在参与和影响代谢过程的信号途径及其对代谢调控的机理可能存在差异。  相似文献   

11.
新型四倍体水稻是本研究团队创制的一类高育性多倍体水稻新种质,携带有多种优异基因。该类材料与同源四倍体水稻杂交获得的杂种F1产量优势明显,具有应用前景。本文首先概述了同源四倍体水稻的研究进展,并重点阐述了新型四倍体水稻创制过程、主要特点、杂种优势表现及其涉及的分子遗传机理,最后提出未来研究的思路及需要解决的问题,为加快新型四倍体水稻在多倍体水稻育种中的利用提供依据。  相似文献   

12.
1985—1986,观察籼、粳及籼,粳F_1杂种终变期核仁染色体数,籼为2个二价核仁染色体,粳为1个二价核仁染色体,籼、粳F_1杂种核仁染色体数与父本水稻的核仁染色体数相同。由此,讨论了“随体丢失”在水稻育种,粳稻起源及遗传学方面的意义。  相似文献   

13.
14.
不同水稻品系幼苗对砷(As)的耐性、吸收及转运   总被引:8,自引:0,他引:8  
刘志彦  陈桂珠  田耀武 《生态学报》2008,28(7):3228-3235
利用琼脂培养基模拟水稻生长的厌氧环境,研究了As对不同水稻品系幼苗生长的影响以及As在其体内的积累及转运特性.结果表明,不同浓度(0~4.0mg/L)的As对供试水稻品系根部干物质积累无显著影响(P>0.05).杂交稻与糯稻的地上部干物质积累随基质中As浓度的增加呈减小趋势,但低剂量的As(0.5mg/L)促进常规稻的生长.水稻地上部的As积累量随基质中As浓度的升高总体均呈增加趋势.水稻根系对As具有较强的吸收与累积能力.水稻根部As的积累量为156.31~504 03mg/kg,占总As含量的63.40~81.90%,远远高于其地上部As的积累量.相比于其它两个品系,糯稻的生物量积累高,耐性指数较大,根部及地上部对As的积累量较低,因此更适合种植在As污染土壤.  相似文献   

15.
Double-season rice cropping systems occupy a large portion of the rice production area in southern China. Because the problem of insufficient labor, mechanical transplanting (in contrast to the manual transplanting) was become more attractive in double-season rice system. However, the decisive yield factors which resulting in high grain yield of early-season rice are unclear under mechanical-transplanted conditions. In present study, the field experiments were conducted in the early season in 2017 and repeated in 2018 in Santang Town, Hunan Province, China. Ten early season rice cultivars (Zhuliangyou 819, Lingliangyou 268, Lingliangyou 104, Luliangyou 996, Xiangzaoxian 24, Xiangzaoxian 32, Xiangzaoxian 45, Xiangzaoxian 42, Zhongjiazao 17, and Zhongzao 39) were used as materials in this study. The difference in grain yield and closelyrelated agronomic and physiological traits of ten tested cultivars were compared. The range of yields (t ha–1 at 86% dry matter) in 2017 was 6.2 to 8.7 (mean 7.8) and in 2018 was 6.5 to 8.4 (mean 7.8). Grain weight and pre-heading biomass accumulation had potent significant positive correlations with the grain yield. The greater pre-heading biomass accumulation was major attributed to higher apparent radiation use efficiency. Our results suggested that early-season rice cultivars to achieve the high grain yield in mechanical-transplanted conditions depends on apparent radiation use efficiency in the pre-heading period and higher grain weight.  相似文献   

16.
Liu Z Y  Chen G Z  Tian Y W 《农业工程》2008,28(7):3228-3235
By simulating the anaerobic conditions with agar nutrient solutions, effect of arsenic (As) on the growth and As uptake by hybrid, conventional and glutinous rice cultivars were studied. It showed insignificant effect of As on the root dry weights of three rice cultivars when treated by As of different concentrations. The shoot dry weights of hybrid and glutinous decreased with As concentrations increasing, while low concentrations of As (0.5 mg L?1) could enhance the growth of conventional rice. Generally, As concentrations in roots and shoots increased as As concentrations of treatment solutions increasing. The root system had strong ability to uptake and accumulate As. The root As concentrations ranged from 156 to 504 mg kg?1, representing 63.40%–81.90% of the total As concentrations in rice, which were much higher than shoot As concentrations. The fact that the glutinous rice had higher biomass, higher tolerance, and lower As concentrations in its roots and shoots than the other two rice cultivars proved that the glutinous rice was more applicable to As-polluted soils.  相似文献   

17.
籼稻品种浙辐802抗瘟性遗传研究   总被引:7,自引:0,他引:7  
通过与8个日本鉴别品种杂交和利用日本代表菌系研54-04及我国南方稻区菌系95-h接种鉴定,研究了籼稻品种浙辐802的抗性遗传。研究结果表明,该品种对菌系研54-04的抗性由 2对显性基因控制,对菌系 95-t2的抗性由 1对显性基因控制。基因等位性分析确认,浙辐802中抵抗95-t2的抗病基因与Pi-i基因等位,与Pi-a、Pi-sh、Pi-k、Pi-z、Pi-b、Pi-t、Pi-ta等已知基因位点为非等位关系;抵抗菌系研54-04,感染菌系95-t2的基因与Pi-i、Pi-k、Pi-b、 Pi-t 4个已知基因位点为非等位关系。对这个基因与其他已知基因的等位性进行了分析,认为它可能是1个未被命名的新基因。  相似文献   

18.
Fifty-one pairs of hulled rice samples and the soil from which each rice sample was grown were analyzed for heavy metals in August, 1979, in order to estimate the background contamination of cadmium (Cd), copper (Cu), and zinc (Zn) in rice grown in the Houston, Texas area. Both samples were divided into three groups by soil types and colors. The cadmium concentration in Texas rice was only one-half to one-quarter lower than that of Asian rice. However, the levels of Cu and Zn in rice in Texas were similar to those reported. Soil heavy metals were lower than ever reported, but these values were consistent with the geochemical characteristics of the Texas Houston area. No particular relationship was found between the three metals in rice and the metals in soil where the sampled rice was grown.  相似文献   

19.
Origin,dispersal, cultivation and variation of rice   总被引:49,自引:0,他引:49  
There are two cultivated and twenty-one wild species of genus Oryza. O. sativa, the Asian cultivated rice is grown all over the world. The African cultivated rice, O. glaberrima is grown on a small scale in West Africa. The genus Oryza probably originated about 130 million years ago in Gondwanaland and different species got distributed into different continents with the breakup of Gondwanaland. The cultivated species originated from a common ancestor with AA genome. Perennial and annual ancestors of O. sativa are O. rufipogon and O. nivara and those of O. glaberrima are O. longistaminata/, O. breviligulata and O. glaberrima probably domesticated in Niger river delta. Varieties of O. sativa are classified into six groups on the basis of genetic affinity. Widely known indica rices correspond to group I and japonicas to group VI. The so called javanica rices also belong to group VI and are designated as tropical japonicas in contrast to temperate japonicas grown in temperate climate. Indica and japonica rices had a polyphyletic origin. Indicas were probably domesticated in the foothills of Himalayas in Eastern India and japonicas somewhere in South China. The indica rices dispersed throughout the tropics and subtropics from India. The japonica rices moved northward from South China and became the temperate ecotype. They also moved southward to Southeast Asia and from there to West Africa and Brazil and became tropical ecotype. Rice is now grown between 55°N and 36°S latitudes. It is grown under diverse growing conditions such as irrigated, rainfed lowland, rainfed upland and floodprone ecosystems. Human selection and adaptation to diverse environments has resulted in numerous cultivars. It is estimated that about 120000 varieties of rice exist in the world. After the establishment of International Rice Research Institute in 1960, rice varietal improvement was intensified and high yielding varieties were developed. These varieties are now planted to 70% of world's riceland. Rice production doubled between 1966 and 1990 due to large scale adoption of these improved varieties. Rice production must increase by 60% by 2025 to feed the additional rice consumers. New tools of molecular and cellular biology such as anther culture, molecular marker aided selection and genetic engineering will play increasing role in rice improvement.  相似文献   

20.
Pyricularia grisea is the most destructive and cosmopolitan fungal pathogen of rice and it can also cause disease on other agriculturally important cereals. We determined the number, location and interaction of quantitative trait loci (QTL) associated with resistance to P. grisea isolates obtained from rice (THL142 and THL222) and barley (TH16 and THL80) grown in Thailand. The isolates showed a spectrum of virulence when used to inoculate a series of differentials. We used a reference blast resistance mapping population of rice (IR64 × Azucena). IR64 was highly resistant, and Azucena was highly susceptible, to all four isolates. The numbers of resistant vs. susceptible progeny suggest that the resistance of IR64 is determined by two or three genes with additive effects. The correlation coefficients for all pairwise comparisons of disease severity were high and highest between barley isolates and between rice isolates. Four QTL were detected, one on each of the following chromosomes 2, 8, 9 and 10. IR64 contributed resistance alleles at three of the QTL (chromosomes 2, 8 and 9). Azucena contributed the resistance allele at the QTL on chromosome 10 in response to inoculation with isolate THL142. The results of the QTL analysis support interpretation of the phenotypic frequency distributions regarding the number of genes determining resistance to the four isolates in this population. Our results are novel in adding blast isolates from barley to the catalogue of pathogen specificities to which a gene, or genes, from IR64 confer resistance.  相似文献   

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